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Facile O-atom insertion into CC and CH bonds by a trinuclear copper complex designed to harness a singlet oxene

机译:通过利用单线态氧的三核铜络合物将O原子轻松插入CC和CH键

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摘要

Two trinuclear copper [CuICuICuI(L)]1+ complexes have been prepared with the multidentate ligands (L) 3,3′-(1,4-diazepane-1,4-diyl)bis(1-((2-(dimethylamino)ethyl)(methyl)amino)propan-2-ol) (7-Me) and (3,3′-(1,4-diazepane-1,4-diyl)bis(1-((2-(diethylamino) ethyl)(ethyl) amino)propan-2-ol) (7-Et) as models for the active site of the particulate methane monooxygenase (pMMO). The ligands were designed to form the proper spatial and electronic geometry to harness a “singlet oxene,” according to the mechanism previously suggested by our laboratory. Consistent with the design strategy, both [CuICuICuI(L)]1+ reacted with dioxygen to form a putative bis(μ3-oxo)CuIICuIICuIII species, capable of facile O-atom insertion across the central CC bond of benzil and 2,3-butanedione at ambient temperature and pressure. These complexes also catalyze facile O-atom transfer to the CH bond of CH3CN to form glycolonitrile. These results, together with our recent biochemical studies on pMMO, provide support for our hypothesis that the hydroxylation site of pMMO contains a trinuclear copper cluster that mediates CH bond activation by a singlet oxene mechanism.
机译:制备了两种三核铜[Cu I Cu I Cu I (L)] 1 + 配合物。多齿配体(L)3,3'-(1,4-二氮杂-1,4-二基)双(1-((2-(二甲基氨基)乙基)(甲基)氨基)丙-2-醇)(7- Me)和(3,3'-(1,4-diazepane-1,4-diyl)bis(1-((2-(diethylamino)ethyl)(ethyl)amino)prop-2-ol)(7-Et )作为颗粒甲烷单加氧酶(pMMO)活性位点的模型,根据我们实验室先前提出的机理,这些配体被设计为形成适当的空间和电子几何结构,以利用“单氧杂环丁烯”。策略中,[Cu I Cu I Cu I (L)] 1 + 都与双氧反应形成一个推测的双(μ3-氧代)Cu II Cu II Cu III 物种,能够轻松地将O原子插入到苯甲腈的中心CC键上和2,3-丁二酮在环境温度和压力下,这些配合物还催化容易的O原子转移至CH键CH 3 CN形成乙醇腈。这些结果,加上我们最近对pMMO的生化研究,为我们的假设提供了支持,即pMMO的羟基化位点包含一个三核铜簇,该簇通过单线态氧烯机制介导CH键的活化。

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